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  3. Oxidative damage of SP-D abolishes control of eosinophil extracellular DNA trap formation.
 

Oxidative damage of SP-D abolishes control of eosinophil extracellular DNA trap formation.

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BORIS DOI
10.7892/boris.116900
Publisher DOI
10.1002/JLB.3AB1117-455R
PubMed ID
29733456
Description
The asthmatic airways are highly susceptible to inflammatory injury by air pollutants such as ozone (O ), characterized by enhanced activation of eosinophilic granulocytes and a failure of immune protective mechanisms. Eosinophil activation during asthma exacerbation contributes to the proinflammatory oxidative stress by high levels of nitric oxide (NO) production and extracellular DNA release. Surfactant protein-D (SP-D), an epithelial cell product of the airways, is a critical immune regulatory molecule with a multimeric structure susceptible to oxidative modifications. Using recombinant proteins and confocal imaging, we demonstrate here that SP-D directly bound to the membrane and inhibited extracellular DNA trap formation by human and murine eosinophils in a concentration and carbohydrate-dependent manner. Combined allergic airway sensitization and O exposure heightened eosinophilia and nos2 mRNA (iNOS) activation in the lung tissue and S-nitrosylation related de-oligomerisation of SP-D in the airways. In vitro reproduction of the iNOS action led to similar effects on SP-D. Importantly, S-nitrosylation abolished the ability of SP-D to block extracellular DNA trap formation. Thus, the homeostatic negative regulatory feedback between SP-D and eosinophils is destroyed by the NO-rich oxidative lung tissue environment in asthma exacerbations.
Date of Publication
2018-07
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Keyword(s)
eosinophil extracellular traps (EETs) eosinophils surfactant pulmonary-associated protein D (SP-D)
Language(s)
en
Contributor(s)
Yousefi, Shidaorcid-logo
Institut für Pharmakologie
Sharma, Satish K
Stojkov, Darkoorcid-logo
Institut für Pharmakologie
Germic, Nina
Institut für Pharmakologie
Aeschlimann, Salome Johanna
Institut für Pharmakologie
Ge, Moyar Q
Flayer, Cameron H
Larson, Erik D
Redai, Imre G
Zhang, Suhong
Koziol-White, Cynthia J
Karikó, Katalin
Simon, Hans-Uweorcid-logo
Institut für Pharmakologie
Haczku, Angela
Additional Credits
Institut für Pharmakologie
Series
Journal of leukocyte biology
Publisher
Society for Leukocyte Biology
ISSN
0741-5400
Access(Rights)
restricted
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